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Optical properties of the mouse eye

机译:鼠眼的光学特性

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The Shack-Hartmann wavefront sensor (SHWS) spots upon which ocular aberration measurements depend have poor quality in mice due to light reflected from multiple retinal layers. We have designed and implemented a SHWS that can favor light from a specific retinal layer and measured monochromatic aberrations in 20 eyes from 10 anesthetized C57BL/6J mice. Using this instrument, we show that mice are myopic, not hyperopic as is frequently reported. We have also measured longitudinal chromatic aberration (LCA) of the mouse eye and found that it follows predictions of the water-filled schematic mouse eye. Results indicate that the optical quality of the mouse eye assessed by measurement of its aberrations is remarkably good, better for retinal imaging than the human eye. The dilated mouse eye has a much larger numerical aperture (NA) than that of the dilated human eye (0.5 NA vs. 0.2 NA), but it has a similar amount of root mean square (RMS) higher order aberrations compared to the dilated human eye. These measurements predict that adaptive optics based on this method of wavefront sensing will provide improvements in retinal image quality and potentially two times higher lateral resolution than that in the human eye.
机译:由于多个视网膜层反射的光,眼像差测量所依赖的Shack-Hartmann波前传感器(SHWS)斑点在小鼠中的质量较差。我们已经设计并实现了一种SHWS,该SHWS可以使来自特定视网膜层的光受到青睐,并且可以测量来自10只麻醉过的C57BL / 6J小鼠的20只眼睛的单色像差。使用这种仪器,我们表明老鼠是近视的,而不是经常报道的远视的。我们还测量了鼠眼的纵向色差(LCA),发现它遵循充满水的示意性鼠眼的预测。结果表明,通过测量其像差评估的小鼠眼睛的光学质量非常好,比人眼在视网膜成像方面更好。扩张的小鼠眼的数值孔径(NA)比扩张的人眼的数值孔径(0.5 NA vs. 0.2 NA)大得多,但是与扩张的人眼相比,它具有类似的均方根(RMS)高阶像差量眼。这些测量结果表明,基于这种波前感测方法的自适应光学器件将改善视网膜图像质量,并且横向分辨率可能比人眼高两倍。

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